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Solar PV direct drive Heat Pump

  • KOLANT DC Inverter Solar PV direct drive Heat Pump is an overall energy solution for your home Heating, Cooling + Domestic Hot Water in one solution.
  • Direct solar Photovoltaic Electricity power supply connection
  • Compatible with Solar thermal, Solar PV
  • Enery Class A+++ with R32 refrigerant gas
  • European standard inverter heat pump
  • With Wifi control function
  • With modbus protocol and RS485 interface

Cross-industry Integrated New Energy Heat Pump

Kolant Innovative green energy methods such as solar power generation, wind energy, photovoltaic power storage, etc. are deployed and used with heat pump energy consumption to achieve seamless switching between dual power inputs, give priority to the use of   photovoltaic energy, and eliminate the need for  secondary conversion, which greatly reduces user  energy

Sunny Day Mode. “Free” heating/cooling.

When there is abundant sunlight and the photovoltaic system generates electricity that fully meets all the power consumption requirements of the unit, free heating/cooling can be achieved.

Cloudy Day Mode. Power grid intelligent supplementation.

When the sunlight is insufficient, the photovoltaic system supplies partial power, and the power grid supplements it intelligently to ensure the stable operation of the unit.

Night Mode. Power supply from the power grid.

During the night period, the photovoltaic system does not generate electricity, and the power grid supplies electricity directly. The energy consumption is equivalent to that of the unit itself.

 

More Energy Source For More Comfortable Home

Replacing traditional coal boilers, oil burner, electric boilers, and ordinary air conditioners,
brings you more energy-efficient and greener options.

Kolant Heat Pump Benefits to you

Low Air Temp Strong Heating

It is designed to capture solar energy even in low – temperature environments. By leveraging advanced heat – transfer technologies and high – efficiency collectors, it can convert solar energy into powerful heating output. This ensures that homes and commercial spaces remain warm and cozy, regardless of the cold outside.

0 cost when Solar PV direct driving

During the day, as the sun shines, the PV panels convert sunlight into electricity, which directly powers the heat pump.
This means there’s no need to rely on expensive grid electricity or burn costly fossil fuels. With 0 cost operation under solar PV driving, it not only significantly cuts down on energy bills but also contributes to a greener planet by reducing carbon emissions

 

 

Adopt Multi noise reducing technology

It incorporates advanced noise – reducing materials in its construction. These materials are strategically placed around the key components such as the compressor and the fan, which are usually the main sources of noise. Additionally, it features an optimized design of the internal structure. This not only ensures smooth operation but also minimizes the vibrations that cause noise.

0.1°C temp tolerance Super comfort

Equipped with state – of – the – art temperature – control technology, it can maintain a stable indoor temperature within a minuscule 0.1°C range. Whether it’s the sweltering summer or the chilly winter, it ensures that the indoor climate remains consistently pleasant.
This high – precision temperature regulation not only provides a more comfortable living or working environment but also helps in energy conservation.
Kolant Heat Pump Advantage for you

Auto switch solar and Grid electricity

When there is ample sunlight, it automatically and efficiently utilizes solar energy, converting it into heat energy to achieve energy conservation and environmental friendliness. When sunlight is insufficient, it can quickly switch to grid electricity to ensure a stable supply of heating or cooling. In this way, users don’t have to worry about unstable energy supply. They can not only enjoy the green benefits brought by solar energy but also rely on grid electricity to ensure a good user experience, truly achieving high efficiency, convenience, and cost – effectiveness.

Full DC Inverter + EVI

– 35°C Heating
DC inverter + EVI technology to operate strongly and heat (up to 60°C) stably in ambient -35°C.

Reliable & Safe
Leading COP increasing technology, strict production control and international brand components result stable product quality

Remote Control
Mobile APP control and Modbus control are both available for remote control monitor and maintenance.

Technical Data

Models Air temp/outlet water temp GFRB-85H/N8
-BBPEEVI
COP GFRB-110H/N8
-BBPEEVI
COP GFRB-150H/N8
-BBPEEVI
COP GFRB-185H/N8
-BBPEEVI
COP GFRB-240H/N8
-BBPEEVI
COP
Heating capacity/Power input (KW) at A20/W35°C 10.6/1.89 5.61 14.42/2.88 5.01 21.1/3.89 5.42 22.8/4.4 5.18 29.5/6.01 4.91
at A7/W35°C 8.59/1.87 4.59 10.6/2.55 4.16 14.7/3.31 4.44 18.8/4.4 4.27 23.1/5.34 4.33
at A7/W45°C 7.91/2.23 3.55 9.97/3.14 3.18 13.5/4.1 3.29 17.8/5.24 3.4 22.6/6.11 3.7
at A2/W35°C 7.65/1.81 4.23 9.54/2.49 3.83 13.08/3.21 4.07 16.92/4.31 3.93 20.29/5.38 3.77
at A2/W45°C 7.04/2.15 3.27 8.97/3.06 2.93 12.02/3.97 3.03 16/5.12 3.13 18.7/6.4 2.92
at A-12/W41°C 5.9/2.45 2.41 6.3/2.7 2.33 10.2/4.35 2.34 11.6/5.04 2.3 14.7/5.88 2.5
at A-20/W41°C 5.4/2.56 2.11 5.61/2.72 2.06 8.9/4.23 2.1 10.5/4.97 2.11 13.7/5.78 2.37
Cooling Capacity/Power input(KW) at A35/ W18ºC 9.2/2.7 3.41 11/3.3 3.33 13.9/4.2 3.31 15.6/4.8 3.25 20.1/6.2 3.24
at A35/W7ºC 7.2/2.73 2.64 8.6/3.4 2.53 9.8/3.77 2.6 10.5/4.2 2.5 13.5/5.09 2.65
Max.current        (A) 18 19 28 14.3 18.1
Max power input 4KW 5KW 6KW 7KW 9KW
Solar working max voltage 340VDC
Electric supply 230V/50~60HZ 400V/50~60HZ 400V/50~60HZ
Max.Outlet water temperature 60oC
Working temperature range (oC) -30 ~ 43
Refrigerant circuit Refrigerant R32
DC Inverter compressor MITSUBISHI MITSUBISHI MITSUBISHI MITSUBISHI MITSUBISHI
Heat exchange Copper and Hydrauphilic Aluminum Fin
Air flow     (m3/h) 2400 5800 6000 7000
Water circuit Heat exchanger High efficiency tube in shell heat exchanger
Inlet/Outlet pipe size DN25(G1″) DN25(G1″) DN25(G1″) DN25(G1″) DN25(G1″)
Water flow  (m3/h) ≥1.5 ≥1.8 ≥2.5 ≥3 ≥3.9
permitted pressure ≤0.8MPa
Unit dimensions   WxHxD   (mm) 960*820*380 960*820*380 960*1270*380 960*1270*380 1030*1340*390
Pacage dimensions   WxHxD   (mm) 1040*940*502 1040*940*502 1040*1390*502 1040*1390*502 1115*1510*510
Net weight                               (Kg) 68 68 108 108 128
Gross weight                            (Kg) 85 85 125 125 145
Noise level                             (dB(A)) 56 56 59 59 60
Loading quantity for 20’/40′ container 44/88 44/88 22/44 22/44 22/44

Installation Cases

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